Literature DB >> 30986574

Anti-trypanosomal activity of doubly modified salinomycin derivatives.

Michał Antoszczak1, Dietmar Steverding2, Michał Sulik3, Jan Janczak4, Adam Huczyński3.   

Abstract

As a group of biologically active compounds, polyether antibiotics (ionophores) show a broad spectrum of interesting pharmacological properties, ranging from anti-bacterial to anti-cancer activities. There is increasing evidence that ionophores, including salinomycin (SAL), and their semi-synthetic analogues are promising candidates for the development of drugs against parasitic diseases. Our previous studies have shown that esterification and amidation of the C1 carboxylate moiety of SAL provides compounds with potent activity against Trypanosoma brucei, protozoan parasites responsible for African trypanosomiasis. In this paper, we present the synthetic pathways, crystal structures and anti-trypanosomal activity of C1 esters, amides and hydroxamic acid conjugates of SAL, its C20-oxo and propargylamine analogues as well novel C1/C20 doubly modified derivatives. Evaluation of the trypanocidal and cytotoxic activity using bloodstream forms of T. brucei and human myeloid HL-60 cells revealed that the single-modified C20-oxo and propargylamine precursor molecules 10 and 16 were the most anti-trypanosomal and selective compounds with 50% growth inhibition (GI50) values of 0.037 and 0.035 μM, and selectivity indices of 252 and 300, respectively. Also the salicylhydroxamic acid conjugate of SAL (compound 9) as well as benzhydroxamic acid and salicylhydroxamic acid conjugates of 10 (compounds 11 and 12) showed promising trypanocidal activities with GI50 values between 0.032 and 0.035 μM but less favorable selectivities. The findings confirm that modification of SAL can result in derivatives with improved trypanocidal activity that might be interesting lead compounds for further anti-trypanosomal drug development.
Copyright © 2019 Elsevier Masson SAS. All rights reserved.

Entities:  

Keywords:  African trypanosomiasis; Allylic hydroxyl oxidation; Anti-parasitic activity; Crystal structure; Polyether ionophores; Reductive amination; Trypanosoma brucei

Mesh:

Substances:

Year:  2019        PMID: 30986574     DOI: 10.1016/j.ejmech.2019.03.061

Source DB:  PubMed          Journal:  Eur J Med Chem        ISSN: 0223-5234            Impact factor:   6.514


  3 in total

1.  Synthesis and Anticancer Activity of Dimeric Polyether Ionophores.

Authors:  Michał Sulik; Ewa Maj; Joanna Wietrzyk; Adam Huczyński; Michał Antoszczak
Journal:  Biomolecules       Date:  2020-07-12

Review 2.  Salinomycin as a potent anticancer stem cell agent: State of the art and future directions.

Authors:  Dan Qi; Yunyi Liu; Juan Li; Jason H Huang; Xiaoxiao Hu; Erxi Wu
Journal:  Med Res Rev       Date:  2021-11-16       Impact factor: 12.388

3.  Single and double modified salinomycin analogs target stem-like cells in 2D and 3D breast cancer models.

Authors:  Alicja Urbaniak; Megan R Reed; Daniel Fil; Anika Moorjani; Sarah Heflin; Michał Antoszczak; Michał Sulik; Adam Huczyński; Michalina Kupsik; Robert L Eoff; Melanie C MacNicol; Timothy C Chambers; Angus M MacNicol
Journal:  Biomed Pharmacother       Date:  2021-06-12       Impact factor: 7.419

  3 in total

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